Intelligent community access control device
By installing protective gate mechanisms on both sides of the access control barrier, and utilizing multi-layer buffer components and a fixing structure, the problem of damage to the access control barrier caused by electric vehicle collisions has been solved, thus improving the stability and durability of the access control device.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HANGZHOU HENGSHENG RONXIN SUPPLY CHAIN CO LTD
- Filing Date
- 2025-11-03
- Publication Date
- 2026-07-21
Smart Images

Figure CN224536554U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of access control technology, and in particular to a smart community access control device. Background Technology
[0002] Smart community access control is a security device that prevents bad people and non-residents from entering. The installation of smart community access control can increase the security of residents. When smart access control is used at the entrance and exit of the community, there is usually a type of gate with facial recognition function as the access control device. This type of access control gate can be opened for entry and exit by swiping a card or facial recognition.
[0003] When existing access control gates are installed and used at the entrances and exits of residential communities, these gates are often used by two-wheeled or small three-wheeled electric vehicles. When these electric vehicles pass through the gate, the front wheels of some vehicles are prone to accidentally hitting the two ends of the gate body due to misoperation. This makes the access control gate prone to shaking and damage due to the impact of electric vehicles during long-term use. To address this, we propose a smart community access control device. Utility Model Content
[0004] The main objective of this invention is to provide a smart community access control device. By installing protective mechanisms on both sides of the entrance / exit housing of the access control gate, these mechanisms provide an impact-resistant buffer protection at the gate body using an L-shaped support plate and an L-shaped soft pad. Subsequently, the L-shaped support plate, combined with a buffer mechanism and an L-shaped receiving plate, forms a second impact-resistant buffer protection. This ensures external protection when the gate body at the entrance / exit position is impacted by a bicycle, preventing damage from external impacts and effectively guaranteeing the stable operation of the smart community access control system. Furthermore, the buffer mechanism between the L-shaped receiving plate and the L-shaped support plate features a rubber hollow cylinder with double-headed concave ribs, providing effective layered deformation buffering, greatly reducing the force transmitted between the L-shaped receiving plate and the L-shaped support plate. Simultaneously, the base of the L-shaped receiving plate is fixed to the concrete ground with lifting piles, ensuring the protective mechanism can stably protect the access control gate body after being subjected to force. This effectively solves the problems in the prior art.
[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows: A smart community access control device includes an access control gate body and a gate protection mechanism. The gate protection mechanism includes an L-shaped support plate, an L-shaped soft pad, a base block, a buffer mechanism, an L-shaped receiving plate, and a lifting pin. The L-shaped support plate is bolted to the outer sides of both ends of the access control gate body, and an L-shaped soft pad is pressed between the L-shaped support plate and the access control gate body. The base block is welded to the bottom of the L-shaped support plate, and the L-shaped support plate above the base block is connected to the L-shaped receiving plate via the buffer mechanism. The lower plate of the L-shaped receiving plate... A sliding strip is welded to the surface of the base block, and a lifting and inserting stake is inserted through the base block surface on one side of the sliding strip. The transition mechanism includes a rubber hollow cylinder, double-headed concave ribs, a support frame, and steel wire strips. The cylindrical bodies of the rubber hollow cylinder are arranged and bonded between the surfaces of the L-shaped support plate and the L-shaped receiving plate, and a support frame is bonded to the top of the cylindrical body of the rubber hollow cylinder. A steel wire strip extending into the elastic cylindrical body of the rubber hollow cylinder is fixed in the frame of the support frame, and double-headed concave ribs for connecting the cylindrical body wall are symmetrically protruding inside the cavity of the rubber hollow cylinder.
[0006] Furthermore, the base block surface below the slider is symmetrically provided with T-shaped round head grooves for sliding and mounting the T-shaped round head strip, and the T-shaped round head strip is welded to the bottom of the slider body; By adopting the above technical solution, the T-shaped round head strip slides at the T-shaped round head groove of the base block below the slide bar, so that the L-shaped receiving plate can press the rubber hollow cylinder close to the L-shaped support plate.
[0007] Furthermore, the base block surface between the T-shaped round head grooves is provided with a through hole, and a lifting stake is inserted into the through hole; By adopting the above technical solution, the lifting pile can be inserted downwards at the insertion hole of the foundation block.
[0008] Furthermore, the pile body of the lifting pile is a pile body with a cone head at the bottom, and the top of the pile body of the lifting pile is integrally formed with an L-shaped lifting block. By adopting the above technical solution, workers can pre-drill pre-insertion holes in the concrete ground according to the insertion position of the lifting pile. The lifting pile can smoothly drive into the pre-insertion holes in the concrete ground where the access control gate body is located with its cone head, providing support for the base block.
[0009] Furthermore, an installation hole for screwing in an internal hexagonal bolt is provided between the access control gate body, the L-shaped support plate, and the L-shaped soft pad plate, and an insertion hole is provided through the surface of the L-shaped support plate on one side of the installation hole. By adopting the above technical solution, the internal hex bolt can be screwed into the insertion holes of the L-shaped receiving plate into the insertion holes of the access control gate body, the L-shaped bearing plate and the L-shaped soft pad, so as to easily lock the L-shaped bearing plate to the outside of the gate machine gate body.
[0010] Furthermore, the buffer mechanism consists of four sets of buffer mechanisms arranged and bonded between the L-shaped support plate and the L-shaped receiving plate, and the support frame of the buffer mechanism protrudes upward between the L-shaped support plate and the L-shaped receiving plate. By adopting the above technical solution, four sets of rubber hollow cylinders of the buffer mechanism provide cushioning between the L-shaped support plate and the L-shaped receiving plate. At the same time, the support frame of the buffer mechanism protrudes upward from the L-shaped support plate and the L-shaped receiving plate, making the support frame less susceptible to compression by the L-shaped support plate and the L-shaped receiving plate.
[0011] Compared with the prior art, the present invention has the following beneficial effects: This utility model provides a protective barrier mechanism on both sides of the entrance and exit housing of the access control gate body. The protective barrier mechanism provides an impact-resistant buffer protection at the access control gate body by using an L-shaped support plate and an L-shaped soft pad. Then, the L-shaped support plate, together with the soft connection mechanism and the L-shaped receiving plate, forms a second impact-resistant buffer protection. This ensures that the gate body at the entrance and exit position of the access control gate body is externally protected when it is hit by a bicycle, ensuring that the access control gate body is not easily damaged by external impacts, and effectively ensuring the stable use of the smart community access control system. Furthermore, the transition mechanism between the L-shaped receiving plate and the L-shaped bearing plate has a rubber hollow cylinder and double-headed concave ribs to provide effective layered deformation buffering, which greatly buffers the force transmitted between the L-shaped receiving plate and the L-shaped bearing plate. At the same time, the base of the L-shaped receiving plate has lifting piles fixed on the concrete ground to ensure that the gate protection mechanism can stably protect the gate body after being subjected to force. Attached Figure Description
[0012] Figure 1 This is a schematic diagram of the overall structure of a smart community access control device according to this utility model.
[0013] Figure 2 This is a schematic diagram showing the disassembled gate mechanism and gate body of a smart community access control device according to this utility model.
[0014] Figure 3 This is an exploded view of the gate protection mechanism of a smart community access control device according to this utility model.
[0015] Figure 4 This is an exploded view of the buffer mechanism of a smart community access control device according to this utility model.
[0016] Figure 5 This is a schematic diagram of the lifting and inserting pile structure of a smart community access control device according to this utility model.
[0017] In the diagram: 1. Access control gate body; 2. Gate protection mechanism; 3. L-shaped support plate; 4. L-shaped soft pad plate; 5. Base block; 6. Soft connection mechanism; 7. L-shaped receiving plate; 8. Sliding strip; 9. T-shaped round head groove; 10. T-shaped round head strip; 11. Insertion hole; 12. Lifting and inserting pile; 13. Rubber hollow cylinder; 14. Double-headed concave rib; 15. Support frame; 16. Steel wire strip. Detailed Implementation
[0018] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0019] like Figure 1-5 As shown, a smart community access control device includes an access control gate body 1 and a gate protection mechanism 2. The gate protection mechanism 2 includes an L-shaped support plate 3, an L-shaped soft pad 4, a base block 5, a buffer mechanism 6, an L-shaped receiving plate 7, and a lifting and inserting stake 12. The L-shaped support plate 3 is bolted to the outer sides of both ends of the access control gate body 1, and an L-shaped soft pad 4 is pressed between the L-shaped support plate 3 and the access control gate body 1. The base block 5 is welded to the bottom of the L-shaped support plate 3, and the L-shaped support plate 3 above the base block 5 is connected to the L-shaped receiving plate 7 via the buffer mechanism 6. A lifting and inserting stake 12 is welded to the lower plate of the L-shaped receiving plate 7. A sliding strip 8 is pressed against the surface of the base block 5. A lifting and inserting stake 12 is inserted through the surface of the base block 5 on one side of the sliding strip 8. The soft connection mechanism 6 includes a rubber hollow cylinder 13, a double-headed concave rib 14, a support frame 15, and a steel wire strip 16. The cylinder body of the rubber hollow cylinder 13 is arranged and bonded between the surfaces of the L-shaped support plate 3 and the L-shaped receiving plate 7. The top of the cylinder body of the rubber hollow cylinder 13 is bonded to the support frame 15. A steel wire strip 16 is fixed inside the frame of the support frame 15 and extends into the elastic cylinder body of the rubber hollow cylinder 13. The cavity of the rubber hollow cylinder 13 has symmetrically protruding double-headed concave ribs 14 for connecting the cavity wall.
[0020] Among them, the base block 5 below the slide bar 8 has symmetrically opened T-shaped round head grooves 9 for sliding and clamping T-shaped round head strips 10, and the T-shaped round head strips 10 are welded to the bottom of the slide bar 8. By adopting the above technical solution, the T-shaped round head strip 10 slides on the T-shaped round head groove 9 of the base block 5 below the slide bar 8, so that the L-shaped receiving plate 7 can press the rubber hollow cylinder 13 close to the L-shaped support plate 3.
[0021] Among them, the base block 5 between the T-shaped round head grooves 9 has a through hole 11, and a lifting stake 12 is inserted into the through hole 11; By adopting the above technical solution, the lifting pile 12 can be inserted downwards at the insertion hole 11 of the base block 5.
[0022] The pile body of the lifting pile 12 is a pile body with a cone head at the bottom, and the top of the pile body of the lifting pile 12 is integrally formed with an L-shaped lifting block. By adopting the above technical solution, workers can pre-drill pre-insertion holes in the concrete ground according to the insertion position of the lifting pile 12. The lifting pile 12 can smoothly drive into the pre-insertion holes in the concrete ground where the access control gate body 1 is located, providing support for the base block 5.
[0023] Among them, the access control gate body 1, L-shaped support plate 3 and L-shaped soft pad plate 4 are provided with mounting holes for screwing in hexagonal bolts, and the L-shaped support plate 7 on one side of the mounting hole is provided with an insertion hole. By adopting the above technical solution, the internal hex bolt can be screwed into the insertion holes of the L-shaped receiving plate 7 into the insertion holes of the access control gate body 1, the L-shaped bearing plate 3 and the L-shaped soft pad plate 4, so as to easily lock the L-shaped bearing plate 3 to the outside of the gate machine gate body 1.
[0024] Among them, four sets of the buffer mechanism 6 are arranged and bonded between the L-shaped support plate 3 and the L-shaped receiving plate 7, and the support frame 15 of the buffer mechanism 6 is exposed upward between the L-shaped support plate 3 and the L-shaped receiving plate 7. By adopting the above technical solution, four sets of rubber hollow cylinders 13 of the buffer mechanism 6 provide buffer between the L-shaped support plate 3 and the L-shaped receiving plate 7. At the same time, the support frame 15 of the buffer mechanism 6 protrudes upward from the L-shaped support plate 3 and the L-shaped receiving plate 7, so that the support frame 15 is not easily squeezed by the L-shaped support plate 3 and the L-shaped receiving plate 7.
[0025] It should be noted that this utility model is a smart community access control device. By setting up protective gate mechanisms 2 on both sides of the entry / exit housing of the access control gate body 1, the L-shaped support plate 3 of the protective gate mechanism 2 presses against the L-shaped soft pad 4, allowing it to adhere to both sides of the entry / exit housing of the access control gate body 1. Then, workers can pre-drill pre-drilled holes in the concrete ground according to the insertion positions of the insertion holes 11 on the surface of the base block 5 and the insertion positions of the lifting stakes 12. The lifting stakes 12, with their conical heads, can smoothly penetrate the pre-drilled holes in the concrete ground where the access control gate body 1 is located, providing support for the base block 5. At this time, the hex bolts can be screwed into the mounting holes of the L-shaped receiving plate 7 into the mounting holes of the access control gate body 1, the L-shaped bearing plate 3, and the L-shaped soft pad plate 4, making it convenient to lock the L-shaped bearing plate 3 to the outside of the gate machine barrier body 1. The T-shaped round head strip 10 of the slide bar 8 below the L-shaped receiving plate 7 is fitted into the T-shaped round head groove 9 of the base block 5. When the electric vehicle hits the access control gate body 1, the L-shaped receiving plate 7 bears the impact force and is pressed against the rubber hollow cylinder 13 under the guidance of the T-shaped round head strip 10. At this time, the L-shaped receiving plate 7 presses against the rubber hollow cylinder 13 of the buffer mechanism 6 and transmits the force. The L-shaped support plate 3 is provided with an L-shaped soft pad 4 to cushion and protect the access control gate body 1. The rubber hollow cylinder 13, with double-headed concave ribs 14 forming an elastic hollow buffer position, effectively buffers the force transmitted between the L-shaped support plate 7 and the L-shaped support plate 3, thereby ensuring that the impact force on the access control gate body 1 is effectively reduced, protecting the access control gate body 1 so that it can be stably used for smart community access control. A hole can be opened at the support frame 15 to pass through the steel wire 16 for welding. Subsequently, holes can be opened on the surface of the rubber hollow cylinder 13 for the steel wire 16. The insertion and bonding of the gate provides tough support for the hollow rubber cylinder 13, ensuring its toughness and buffering capacity under stress. The top of the access control gate body 1 in this utility model has a facial recognition structure of the prior art, which can be used in conjunction with its own card swiping structure for use in smart community access control systems. A metal pry bar can be inserted into the L-shaped lifting block of the lifting stake 12, so that the lifting stake 12 can be pulled up. At this time, the gate protection mechanism 2 can be disassembled from the outside of the access control gate body 1, so that the gate protection mechanism 2 can be disassembled for replacement and maintenance.
[0026] It should be noted that this utility model is a smart community access control device. All components in this utility model are known to those skilled in the art, and their structure and principles can be learned by those skilled in the art through technical manuals or conventional experimental methods.
[0027] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A smart community access control device, comprising an access control gate body (1), characterized in that: It also includes a gate protection mechanism (2), which includes an L-shaped bearing plate (3), an L-shaped soft pad plate (4), a base block (5), a buffer mechanism (6), an L-shaped receiving plate (7), and a lifting pile (12). The outer side of the double-end shell of the access control gate body (1) is bolted with an L-shaped bearing plate (3), and an L-shaped soft pad plate (4) is pressed between the L-shaped bearing plate (3) and the access control gate body (1). A base block (5) is welded to the bottom of the L-shaped bearing plate (3), and the L-shaped bearing plate (3) above the base block (5) is connected to the L-shaped receiving plate (7) through the buffer mechanism (6). A sliding strip that presses against the surface of the base block (5) is welded to the lower plate of the L-shaped receiving plate (7). (8) A lifting and inserting stake (12) is inserted through the surface of the base block (5) on one side of the slide bar (8). The slow connection mechanism (6) includes a rubber hollow cylinder (13), a double-headed concave rib (14), a support frame (15) and a steel wire strip (16). The cylinder of the rubber hollow cylinder (13) is arranged and bonded between the L-shaped support plate (3) and the L-shaped receiving plate (7). The top of the cylinder of the rubber hollow cylinder (13) is bonded to the support frame (15). The steel wire strip (16) extending into the elastic cylinder of the rubber hollow cylinder (13) is fixed in the frame of the support frame (15). The double-headed concave rib (14) for connecting the cylinder wall is symmetrically protruding in the cylinder cavity of the rubber hollow cylinder (13).
2. The smart community access control device according to claim 1, characterized in that: The base block (5) below the slide bar (8) has symmetrically provided T-shaped round head grooves (9) for sliding and mounting T-shaped round head strips (10), and the T-shaped round head strips (10) are welded to the bottom of the slide bar (8).
3. The smart community access control device according to claim 2, characterized in that: The base block (5) between the T-shaped round head grooves (9) has a through hole (11) on its surface, and a lifting stake (12) is inserted into the through hole (11).
4. A smart community access control device according to claim 3, characterized in that: The pile body of the lifting pile (12) is a pile body with a cone head at the bottom, and the top of the pile body of the lifting pile (12) is integrally formed with an L-shaped lifting block.
5. A smart community access control device according to claim 1, characterized in that: The access control gate body (1), L-shaped support plate (3) and L-shaped soft pad plate (4) are provided with mounting holes for screwing in hexagonal socket bolts, and the L-shaped support plate (7) on one side of the mounting hole is provided with an insertion hole.
6. A smart community access control device according to claim 1, characterized in that: The buffer mechanism (6) is arranged in four sets between the L-shaped support plate (3) and the L-shaped receiving plate (7), and the support frame (15) of the buffer mechanism (6) is exposed upward between the L-shaped support plate (3) and the L-shaped receiving plate (7).